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Flame Structure Analysis and Flamelet/Progress Variable Modelling of DME/Air Flames with Different Degrees of Premixing

机译:DME /空气火焰的火焰结构分析和爆发/进展变量建模,不同程度的预混合

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摘要

Laminar dimethyl ether (DME) coflow jet flames, defined by different levels of partial premixing in the fuel stream, provide canonical test cases for studying conditions in between perfectly premixed and non-premixed characteristics. This work investigates the structure of DME/air flames and the evaluation of suitable flamelet modeling approaches. Three laminar, partially premixed DME/air flames are studied using fully resolved numerical simulations and the flamelet/progress variable (FPV) approach. The flame structure of the partially premixed DME/air flames is discussed and selected slices are compared to each other as well as to Raman/Rayleigh data. Overall, the experimental data is well predicted and the local flame structure is represented by the fully resolved simulations. In the context of the FPV approach, an a priori analysis of the underlying tabulated manifold is carried out. Lookup tables based on strained counterflow flames were identified as the most suitable candidate for the fully coupled FPV simulations of all three partially premixed DME/air flames. The FPV results are further compared a posteriori to the fully resolved simulation data. The flame structure of the partially premixed DME/air flames was reproduced and good results were obtained for the temperature and the species mass fractions. This numerical investigation contributes to the understanding of local flame structures in partially premixed DME/air flames and has the potential to support model selection in complex combustion processes.
机译:通过燃料流中的不同水平预混合定义的层状二甲醚(DME)Coflow喷射火焰,为在完美预混和未预混特性之间进行学习条件的规范试验案例。这项工作调查了DME / AIR火焰的结构和合适的轰炸机建模方法的评估。使用完全解析的数值模拟和轰炸机/进展变量(FPV)方法研究了三个层,部分预混合的DME /空气火焰。讨论部分预混的DME /空气火焰的火焰结构,并将选择的切片彼此相互比较,以及拉曼/瑞利数据。总的来说,实验数据预测得很好,并且局部火焰结构由完全解析的模拟表示。在FPV方法的上下文中,执行对底层制表歧管的先验分析。基于紧张逆流火焰的查找表被识别为所有三个部分预混的DME /空气火焰的完全耦合FPV模拟的最合适的候选者。进一步将FPV结果与完全解析的模拟数据进行了比较了后验。再现部分预混合的DME /空气火焰的火焰结构,得到了温度和物种质量级分的良好结果。该数值调查有助于了解部分预混的DME /空气火焰中的局部火焰结构,并且有可能支持复杂燃烧过程中的模型选择。

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